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The Journal of Physical Chemistry Letters
|
August 18, 2015
Efficient Calculation of Microscopic Dissolution Rate Constants: The Aspirin-Water Interface
Julian Schneider, Karsten Reuter
Journal of the American Chemical Society
|
January 14, 2012
Specific material recognition by small peptides mediated by the interfacial solvent structure
Julian Schneider, Lucio Colombi Ciacchi
Journal of Chemical Theory and Computation
|
November 25, 2015
A Classical Potential to Model the Adsorption of Biological Molecules on Oxidized Titanium Surfaces
Julian Schneider, Lucio Colombi Ciacchi
Frontiers in Robotics and AI
|
May 21, 2025
Consideration of communication in human-machine interaction for cooperative trajectory planning
Julian Schneider, Balint Varga, Sören Hohmann
The Journal of Chemical Physics
|
October 3, 2014
Thermodynamics of surface defects at the aspirin/water interface
Julian Schneider, Chen Zheng, Karsten Reuter
Proceedings of the National Academy of Sciences of the United States of America
|
July 31, 2013
Open-atmosphere sustenance of highly volatile attoliter-size droplets on surfaces
Patrick Galliker, Julian Schneider, Lukas Rüthemann, et al.
ACS Applied Materials & Interfaces
|
December 14, 2022
Using Machine Learning Potentials to Explore Interdiffusion at Metal-Chalcogenide Interfaces
Siddarth K Achar, Julian Schneider, Derek A Stewart
Langmuir : the ACS Journal of Surfaces and Colloids
|
March 18, 2014
Computational prediction of circular dichroism spectra and quantification of helicity loss upon peptide adsorption on silica
Robert H Meissner, Julian Schneider, Peter Schiffels, et al.
Optics Letters
|
April 30, 2021
High pulse energy ZnGeP<sub>2</sub> OPO directly pumped by a Q-switched Tm<sup>3+</sup>-doped single-oscillator fiber laser
Julian Schneider, Patrick Forster, Clément Romano, et al.
Optics Letters
|
May 13, 2022
High-power continuous-wave Tm<sup>3+</sup>:Ho<sup>3+</sup>-codoped fiber laser operation from 2.1 µm to 2.2 µm
Patrick Forster, Clément Romano, Julian Schneider, et al.
Page
of 5
Search research articles
Search
Showing results (1-10 of 41) with videos related to
Sort By:
Page
of 5
The Journal of Physical Chemistry Letters
|
August 18, 2015
Efficient Calculation of Microscopic Dissolution Rate Constants: The Aspirin-Water Interface
Julian Schneider, Karsten Reuter
Journal of the American Chemical Society
|
January 14, 2012
Specific material recognition by small peptides mediated by the interfacial solvent structure
Julian Schneider, Lucio Colombi Ciacchi
Journal of Chemical Theory and Computation
|
November 25, 2015
A Classical Potential to Model the Adsorption of Biological Molecules on Oxidized Titanium Surfaces
Julian Schneider, Lucio Colombi Ciacchi
Frontiers in Robotics and AI
|
May 21, 2025
Consideration of communication in human-machine interaction for cooperative trajectory planning
Julian Schneider, Balint Varga, Sören Hohmann
The Journal of Chemical Physics
|
October 3, 2014
Thermodynamics of surface defects at the aspirin/water interface
Julian Schneider, Chen Zheng, Karsten Reuter
Proceedings of the National Academy of Sciences of the United States of America
|
July 31, 2013
Open-atmosphere sustenance of highly volatile attoliter-size droplets on surfaces
Patrick Galliker, Julian Schneider, Lukas Rüthemann, et al.
ACS Applied Materials & Interfaces
|
December 14, 2022
Using Machine Learning Potentials to Explore Interdiffusion at Metal-Chalcogenide Interfaces
Siddarth K Achar, Julian Schneider, Derek A Stewart
Langmuir : the ACS Journal of Surfaces and Colloids
|
March 18, 2014
Computational prediction of circular dichroism spectra and quantification of helicity loss upon peptide adsorption on silica
Robert H Meissner, Julian Schneider, Peter Schiffels, et al.
Optics Letters
|
April 30, 2021
High pulse energy ZnGeP<sub>2</sub> OPO directly pumped by a Q-switched Tm<sup>3+</sup>-doped single-oscillator fiber laser
Julian Schneider, Patrick Forster, Clément Romano, et al.
Optics Letters
|
May 13, 2022
High-power continuous-wave Tm<sup>3+</sup>:Ho<sup>3+</sup>-codoped fiber laser operation from 2.1 µm to 2.2 µm
Patrick Forster, Clément Romano, Julian Schneider, et al.
Page
of 5